Wearable Microfluidics for Continuous Assay.

Pei-Heng Lin, Hsin-Hua Nien, Bor-Ran Li
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引用次数: 5

Abstract

The development of wearable devices provides approaches for the realization of self-health care. Easily carried wearable devices allow individual health monitoring at any place whenever necessary. There are various interesting monitoring targets, including body motion, organ pressure, and biomarkers. An efficient use of space in one small device is a promising resolution to increase the functions of wearable devices. Through integration of a microfluidic system into wearable devices, embedding complicated structures in one design becomes possible and can enable multifunction analyses within a limited device volume. This article reviews the reported microfluidic wearable devices, introduces applications to different biofluids, discusses characteristics of the design strategies and sensing principles, and highlights the attractive configurations of each device. This review seeks to provide a detailed summary of recent advanced microfluidic wearable devices. The overview of advanced key components is the basis for the development of future microfluidic wearable devices.

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用于连续检测的可穿戴微流体。
可穿戴设备的发展为实现自我保健提供了途径。方便携带的可穿戴设备可以在任何地方进行个人健康监测。有各种有趣的监测目标,包括身体运动、器官压力和生物标志物。在一个小设备中有效利用空间是增加可穿戴设备功能的一个有希望的解决方案。通过将微流体系统集成到可穿戴设备中,将复杂的结构嵌入到一个设计中成为可能,并且可以在有限的设备体积内实现多功能分析。本文综述了已报道的微流体可穿戴设备,介绍了不同生物流体的应用,讨论了设计策略和传感原理的特点,并重点介绍了每种设备的引人注目的配置。这篇综述旨在提供最近先进的微流体可穿戴设备的详细总结。先进关键部件的概述是未来微流控可穿戴设备发展的基础。
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